US6137723A

Memory device having erasable Frohmann-Bentchkowsky EPROM cells that use a well-to-floating gate coupled voltage during erasure

Claim Score by NHIP

Read claim 1, the broadest

Abstract

A memory device has a plurality of memory cells formed in rows and columns. Each memory cell includes an erasable Frohmann-Bentchkowsky p-channel memory transistor and an n-channel MOS access transistor. The memory device utilizes a plurality of erase lines which are connected to p- wells which, in turn, are capacitively coupled to the floating gates of the memory transistors to provide electrical erasability.

US6137723A, drawing sheet 1
Sheet 1 of 42

Term

Term ended

Expired 28 April 2019, 7.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

19 claims: 4 independent, 15 dependent

  1. 1
    Broadest claimClaim Score 40, average(NHIP)A memory device formed in a substrate material of a first conductivity type, the device comprising:a first well of a second conductivity type formed in the substrate material;a second well of the first conductivity type formed in the first well so that the second well is isolated from the substrate material by the first well;a row of memory cells, each memory cell including:a memory transistor having a source and a drain of the first conductivity type formed in the first well, a channel region defined between the source and drain, and a floating gate insulatively formed over the channel and the second well;andan access transistor having a source and a drain of the second conductivity type formed in the substrate material, and a gate, the drain of the access transistor being connected to the drain of the memory transistor;a page line connected to the source of each memory transistor in the row;an erase line connected to the second well;a well line connected to the first well;a plurality of enable lines connected to the access transistors in the row of memory cells so that each enable line is connected to the gate of an access transistor;anda plurality of sense lines formed so that each sense line is connected to a memory cell.
  2. 5
    A method for erasing a memory device formed in a substrate material of a first conductivity type, the device comprising:a first well of a second conductivity type formed in the substrate material;a second well of the first conductivity type formed in the first well so that the second well is isolated from the substrate material by the first well;a row of memory cells, each memory cell including:a memory transistor having a source and a drain of the first conductivity type formed in the first well, a channel region defined between the source and drain, and a floating gate insulatively formed over the channel and the second well;andan access transistor having a source and a drain of the second conductivity type formed in the substrate material, and a gate, the drain of the access transistor being connected to the drain of the memory transistor;a page line connected to the source of each memory transistor in the row;an erase line connected to the second well;a well line connected to the first well;a plurality of enable lines connected to the access transistors in the row of memory cells so that each enable line is connected to the gate of an access transistor;anda plurality of sense lines formed so that each sense line is connected to a memory cell,the method comprising the steps of:applying a positive erase voltage to the well line;andapplying a negative erase voltage to the erase line.
  3. 10
    A memory device formed in a substrate material of a first conductivity type, the device comprising:a plurality of first wells of a second conductivity type formed in the substrate material;a plurality of second wells of the first conductivity type formed in the first wells so that each second well is formed in a corresponding first well, each second well being isolated from the substrate material by the corresponding first well;a plurality of memory cells arranged in rows and columns, each memory cell including:a memory transistor having a source and a drain of the first conductivity type formed in a first well, a channel region defined between the source and drain, and a floating gate insulatively formed over the channel and a second well;andan access transistor having a source and a drain of the second conductivity type formed in the substrate material, and a gate, the drain of the access transistor being connected to the drain of the memory transistor;a plurality of page lines formed adjacent to the rows of cells so that each page line is connected to the source of each memory transistor in a row of cells;a plurality of erase lines formed adjacent to the cells so that an erase line is connected to each second well;a well line connected to each first well;a plurality of enable lines formed adjacent to the columns of cells so that each enable line is connected to the gate of each access transistor in a column of cells;anda plurality of sense lines formed adjacent to the columns of cells so that each sense line is connected to each memory cell in a column of cells.
  4. 15
    A method for erasing a memory device formed in a substrate material of a first conductivity type, the device comprising:a plurality of first wells of a second conductivity type formed in the substrate material;a plurality of second wells of the first conductivity type formed in the first wells so that each second well is formed in a corresponding first well, each second well being isolated from the substrate material by the corresponding first well;a plurality of memory cells arranged in rows and columns, each memory cell including:a memory transistor having a source and a drain of the first conductivity type formed in a first well, a channel region defined between the source and drain, and a floating gate insulatively formed over the channel and a second well;andan access transistor having a source and a drain of the second conductivity type formed in the substrate material, and a gate, the drain of the access transistor being connected to the drain of the memory transistor;a plurality of page lines formed adjacent to the rows of cells so that each page line is connected to the source of each memory transistor in a row of cells;a plurality of erase lines formed adjacent to the cells so that each erase line is connected to a second well;a well line connected to each first well;a plurality of enable lines formed adjacent to the columns of cells so that each enable line is connected to the gate of each access transistor in a column of cells;anda plurality of sense lines formed adjacent to the columns of cells so that each sense line is connected to each memory cell in a column of cells,the method comprising the steps of:applying a positive erase voltage to the well line;applying a negative erase voltage to an erase line that is connected to each second well that a floating gate is formed over in a number of to-be-erased cells;andapplying ground to a remainder of erase lines that are connected to not-to-be-erased cells.